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Citations to this article

HEXIM1 controls satellite cell expansion after injury to regulate skeletal muscle regeneration
Peng Hong, … , Xian-Cheng Jiang, M.A.Q. Siddiqui
Peng Hong, … , Xian-Cheng Jiang, M.A.Q. Siddiqui
Published October 1, 2012
Citation Information: J Clin Invest. 2012;122(11):3873-3887. https://doi.org/10.1172/JCI62818.
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Research Article Muscle biology Article has an altmetric score of 12

HEXIM1 controls satellite cell expansion after injury to regulate skeletal muscle regeneration

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Abstract

The native capacity of adult skeletal muscles to regenerate is vital to the recovery from physical injuries and dystrophic diseases. Currently, the development of therapeutic interventions has been hindered by the complex regulatory network underlying the process of muscle regeneration. Using a mouse model of skeletal muscle regeneration after injury, we identified hexamethylene bisacetamide inducible 1 (HEXIM1, also referred to as CLP-1), the inhibitory component of the positive transcription elongation factor b (P-TEFb) complex, as a pivotal regulator of skeletal muscle regeneration. Hexim1-haplodeficient muscles exhibited greater mass and preserved function compared with those of WT muscles after injury, as a result of enhanced expansion of satellite cells. Transplanted Hexim1-haplodeficient satellite cells expanded and improved muscle regeneration more effectively than WT satellite cells. Conversely, HEXIM1 overexpression restrained satellite cell proliferation and impeded muscle regeneration. Mechanistically, dissociation of HEXIM1 from P-TEFb and subsequent activation of P-TEFb are required for satellite cell proliferation and the prevention of early myogenic differentiation. These findings suggest a crucial role for the HEXIM1/P-TEFb pathway in the regulation of satellite cell–mediated muscle regeneration and identify HEXIM1 as a potential therapeutic target for degenerative muscular diseases.

Authors

Peng Hong, Kang Chen, Bihui Huang, Min Liu, Miao Cui, Inna Rozenberg, Brahim Chaqour, Xiaoyue Pan, Elisabeth R. Barton, Xian-Cheng Jiang, M.A.Q. Siddiqui

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Total citations by year

Year: 2019 2018 2016 2015 2013 Total
Citations: 1 2 1 1 1 6
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Citations to this article (6)

Title and authors Publication Year
Activation of P-TEFb by cAMP-PKA signaling in autosomal dominant polycystic kidney disease
Y Sun, Z Liu, X Cao, Y Lu, Z Mi, C He, J Liu, Z Zheng, MJ Li, T Li, D Xu, M Wu, Y Cao, Y Li, B Yang, C Mei, L Zhang, Y Chen
Science Advances 2019
Immunomodulatory placental-expanded, mesenchymal stromal cells improve muscle function following hip arthroplasty: Placental-derived cells improve muscle regeneration
T Winkler, C Perka, P von Roth, AN Agres, H Plage, B Preininger, M Pumberger, S Geissler, EL Hagai, R Ofir, L Pinzur, E Eyal, G Stoltenburg-Didinger, C Meisel, C Consentius, M Streitz, P Reinke, GN Duda, HD Volk
Journal of Cachexia, Sarcopenia and Muscle 2018
Histological, transcriptomic and in vitro analysis reveal an intrinsic activated state of myogenic precursors in hyperplasic muscle of trout
S Jagot, N Sabin, AL Cam, J Bugeon, PY Rescan, JC Gabillard
BMC Genomics 2018
Karyopherin Alpha 1 Regulates Satellite Cell Proliferation and Survival by Modulating Nuclear Import: KPNA1: Satellite Cell Proliferation and Survival
HJ Choo, A Cutler, GK Pavlath
Stem Cells 2016
The BET Family Member BRD4 Interacts with OCT4 and Regulates Pluripotency Gene Expression
T Wu, HB Pinto, YF Kamikawa, ME Donohoe
Stem Cell Reports 2015
RNA Polymerase II Transcription Elongation Control
J Guo, DH Price
Chemical Reviews 2013

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